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Acta Cryst. (1993).
https://doi.org/
Cited by 19
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L. J. Csetenyi, F. and R. A. Howie
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Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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https://doi.org/
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Elsevier
Computer Aided Chemical Engineering
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a
DMS, Inst. Nacional Engenharia Tecnologia e Inovação, 1649-038 Lishoa, Portugal
b
UEQM. Inst. Nacional Engenharia Tecnologia e Inovação, 1649-038 Lisboa, Portugal
c
DEQB, Instituto Superior Técnico. 1049-001 Lisboa, Portugal
Available online 1 October 2008.
https://doi.org/
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[S. Menchetti and C. Sabelli (1977): "The crystal structure of synthetic sodium pentaborate monohydrate". ''Acta Crystallographica Section B'', volume B33, pages 3730-3733. {{doi|10.1107/S0567740877011959}}]
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[Taha Cagri Senocak, Taha Alper Yilmaz, Hasan Feyzi Budak, Gokhan Gulten, Ahmet Melik Yilmaz, Kadri Vefa Ezirmik, Yasar Totikc (2022): "Influence of sodium pentaborate (B5H10NaO13) additive in plasma electrolytic oxidation process on WE43 magnesium alloys". ''Materials Today Communications'', volume 30, article 103157. {{doi|10.1016/j.mtcomm.2022.103157}}]
Journal home page for Materials Today Communications
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[S. Stella Mary, S. Shahil Kirupavathy, P. Mythili, R. Gopalakrishnan (2008): "Growth and characterization of sodium pentaborate [Na(H4B5O10)] single crystals". ''Spectrochimica Acta Part A'', volume 71, issue 4, 15 pages 1311-1316. {{doi|10.1016/j.saa.2008.04.021}}]
: Molecular and Biomolecular Spectroscopy
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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https://doi.org/
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[Igor V. Pekov, Natalia V. Zubkova, Dmitry I. Belakovskiy, Inna S. Lykova, Vasiliy O. Yapaskurt, Marina F. Vigasina, Evgeny G. Sidorov, Dmitry Yu. Pushcharovsky (2015): "Sanguite, KCuCl3, a New Mineral from the Tolbachik Volcano, Kamchatka, Russia ". ''The Canadian Mineralogist'', volume 53, issue 4, pages 633–641. {{doi|10.3749/canmin.1500012}}]
ESEARCH ARTICLE| JULY 01, 2015
(2015)
https://doi.org/
Article history
[Kristin Persson (2017): "[https://materialsproject.org/materials/mp-1023129/ Materials Data on KCuCl3 (SG:221)". Page at the ''Materials Project'' website. Accessed 0n 2022-07-18. {{doi|10.17188/1354951}}]
[Kristin Persson (2016): "[https://materialsproject.org/materials/mp-27450/ Materials Data on KCuCl3 (SG:14)". Page at the ''Materials Project'' website. Accessed 0n 2022-07-18. {{doi|10.17188/1201674}}]
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[N. Cavadini, G Heigold, W. Henggeler, A. Furrer, H.-U. Güdel, K. Krämer, and H. Mutka (2000): "Quantum magnetic interactions in '''''S''''' = 1/2 KCuCl3". ''Journal of Physics: Condensed Matter'', volume 12, issue 25, pages 5463-5472. {{doi|10.1088/0953-8984/12/25/310}}]
Published under licence by IOP Publishing Ltd
Journal of Physics: Condensed Matter,
Citation N Cavadini et al 2000 J. Phys.: Condens. Matter 12 5463
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[H. Kuroe, N. Takami, N. Niwa, T. Sekine, M. Matsumoto, F. Yamada, H. Tanaka, K. Takemura (2012): "[https://arxiv.org/abs/1209.0235 Longitudinal magnetic excitation in KCuCl3 studied by Raman scattering under hydrostatic pressures]". ''arXiv'' repository, paper 1209.0235. {{doi|10.48550/arXiv.1209.0235}}]
We measure Raman scattering in an interacting spin-dimer system KCuCl3 under hydrostatic pressures up to 5 GPa mediated by He gas. In the pressure-induced quantum phase, we observe a one-magnon Raman peak, which originates from the longitudinal magnetic excitationand is observable through the second-order exchange interaction Raman process. We report the pressure dependence of the frequency, halfwidth and Raman intensity of this mode.
Comments: 4 pages, 3 figures, inpress in JPCS as a proceeding of LT26
Subjects: Strongly Correlated Electrons (cond-mat.str-el)
Cite as: arXiv:1209.0235 [cond-mat.str-el]
(or arXiv:1209.0235v1 [cond-mat.str-el] for this version)
https://doi.org/
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[Roger D. Willett, Claudius Dwiggins Jr., R. F. Kruh, and R. E. Rundle (1963): "Crystal Structures of KCuCl3 and NH4CuCl3". ''The Journal of Chemical Physics'', volume 38, issue 10, pages 2429-. {{doi|10.1063/1.1733520}}]
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Home > The Journal of Chemical Physics > > 10.1063/1.1733520
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No Access Submitted: 11 January 1963 Published Online: 20 July 2004
J. Chem. Phys. 38, 2429 (1963); https://doi.org/
The crystal structures of the isomorphous garnet‐red copper salts, KCuCl3 and NH4CuCl3, have been determined. Each compound contains discrete, planar, Cu2Cl6= dimers. These dimers are stacked above each other along the crystallographic a axis. The cation exhibits a ninefold coordination.
KCuCl3 is antiferromagnetic below 30°K. Both KCuCl3 and NH4CuCl3 are pleochroic with maximum visible absorption when the electric vector is parallel with the Cu–Cu vector of the dimer.
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[T Kato, A Oosawa, K Takatsu, H Tanaka, W Shiramura, K Nakajima, K Kakurai (1999): "Magnetic excitations in the spin gap system KCuCl3 and TlCuCl3". ''Journal of Physics and Chemistry of Solids'', volume 60, issues 8–9, pages 1125-1128. {{doi|10.1016/S0022-3697(99)00072-4}}]
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[N. Cavadini, W. Henggeler, A. Furrer, H.-U. Güdel, K. Krämer, and H. Mutka (1999): "Magnetic excitations in the quantum spin system KCuCl3".''European Journal of Physics'', volume B 7, pages 519-522. {{doi|10.1007/s100510050642}}.]
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ref name=mcmu1969>H. F. McMurdie, J. de Groot, M. Morris, and H. E. Swanson (1969): "Crystallography and Preparation of Some ABCl3 Compounds". ''Journal of Research of the National Bureau of Standards - Series A: Physics and Chemistry'', volume 73A, issue 6, pages 621–626. {{doi|10.6028/jres.073A.049}}
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[Miriding Mutailipu, Min Zhang, Xiaoyu Dong, Yanna Chen, and Shilie Pan (2016): "Effects of the Orientation of [B5O11]7– Fundamental Building Blocks on Layered Structures Based on the Pentaborates". ''Inorganic Chemistry'', volume 55, issue 20, pages 10608–10616. {{doi|10.1021/acs.inorgch}}]
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[Robert K. Momii and Norman H. Nachtrieb (1967): "Nuclear Magnetic Resonance Study of Borate-Polyborate Equilibria in Aqueous Solution". ''Inorganic Chemistry'', volume 6, issue 6, pages 1189-1192. {{doi|10.1021/ic50052a026}}]